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Energy harvesting utilizing reciprocating flow-induced torsional vibration on a T-shaped cantilever beam

机译:在T形悬臂梁上利用往复流动引起的扭转振动的能量收获

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This paper proposes a T-shaped cantilever energy harvester powered by flow-induced torsional vibration. To collect and convert the mechanical (kinetic) energy into electric power, a pair of symmetrical acrylic cylindrical bluff bodies were installed onto the bottom surface of the T-shaped cantilever beam, one at each end; There is also one patch of Macro Fibre Composite (MFC) used as an energy collector and converter which was attached to the fixed end of the cantilever beam. This proposed setup of the energy harvester is able to generate sustainable electric power by harvesting natural mechanical power resulted from the torsional vibration of the beam due to fluid's vortex shedding effects. The proposed energy harvester has the novelty in that our approach harvests fluid flow's energy in a reciprocal fashion making full use of renewable energy incurred in areas surrounding the two bluff bodies. Both the theoretical and experimental analyses on the proposed energy harvesting structure were performed and demonstrated in this paper. The case in the test rig we studied on the proposed energy harvester was able to generate sustainable electric power of approximately 1.0 mu W when flow speed was measured to be 0.33 m s(-1) flowing through two bluff bodies each of 29.5 mm diameter. This work also looks into and discusses pros and cons of various scenarios in terms of structural geometric variations for system optimization of the proposed energy harvester.
机译:本文提出了一种由流动引起的扭转振动提供动力的T形悬臂能量收割机。为了将机械(动力学)能量收集并转换为电力,将一对对称的丙烯酸圆柱形虚张声体安装到T形悬臂梁的底表面上,一个在每个端部;还有一块宏观纤维复合物(MFC)用作能量集电极和转换器,该转换器附接到悬臂梁的固定端。这一提出的能量收割机的设置能够通过收获由于流体的涡流缩小效应而收获来自梁的扭转振动产生的自然机械功率来产生可持续的电力。拟议的能源收割机具有新颖性,因为我们的方法以互惠方式收获流体流动的能量,充分利用两个虚张道周围的区域发生的可再生能源。本文进行了拟议的能量收集结构的理论和实验分析。在所提出的能量收割机上研究的试验台中的情况能够在流过29.5mm直径中的两个虚布体的0.33m S(-1)时产生约1.0μm的可持续电力。这项工作还研究了各种场景的优缺点,以便结构几何变化,用于建议的能源收割机的系统优化。

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